Conduction velocity of intracortical axons in monkey primary visual cortex grows with distance: implications for computation

Fuente: arXiv
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Auteur principal: Zhaoping, Li
Format: Preprint
Publié: 2025
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author Zhaoping, Li
author_facet Zhaoping, Li
contents A critical visual computation is to construct global scene properties from activities of early visual cortical neurons which have small receptive fields. Such a computation is enabled by contextual influences, through which a neuron's response to visual inputs is influenced by contextual inputs outside its classical receptive fields. Accordingly, neurons can signal global properties including visual saliencies and figure-ground relationships. Many believe that intracortical axons conduct signals too slowly to bring the contextual information from receptive fields of other neurons. A popular opinion is that much of the contextual influences arise from feedback from higher visual areas whose neurons have larger receptive fields. This paper re-examines pre-existing data to reveal these unexpected findings: the conduction speed of V1 intracortical axons increases approximately linearly with the conduction distance, and is sufficiently high for conveying the contextual influences. Recognizing the importance of intracortical contribution to critical visual computations should enable fresh progress in answering long-standing questions.
format Preprint
id arxiv_https___arxiv_org_abs_2510_23391
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Conduction velocity of intracortical axons in monkey primary visual cortex grows with distance: implications for computation
Zhaoping, Li
Neurons and Cognition
A critical visual computation is to construct global scene properties from activities of early visual cortical neurons which have small receptive fields. Such a computation is enabled by contextual influences, through which a neuron's response to visual inputs is influenced by contextual inputs outside its classical receptive fields. Accordingly, neurons can signal global properties including visual saliencies and figure-ground relationships. Many believe that intracortical axons conduct signals too slowly to bring the contextual information from receptive fields of other neurons. A popular opinion is that much of the contextual influences arise from feedback from higher visual areas whose neurons have larger receptive fields. This paper re-examines pre-existing data to reveal these unexpected findings: the conduction speed of V1 intracortical axons increases approximately linearly with the conduction distance, and is sufficiently high for conveying the contextual influences. Recognizing the importance of intracortical contribution to critical visual computations should enable fresh progress in answering long-standing questions.
title Conduction velocity of intracortical axons in monkey primary visual cortex grows with distance: implications for computation
topic Neurons and Cognition
url https://arxiv.org/abs/2510.23391